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- W1989884599 abstract "We study $S=1$ kagome antiferromagnets with an isotropic Heisenberg exchange $J$ and strong easy-axis single-ion anisotropy $D$. For $Densuremath{gg}J$, the low-energy physics can be described by an effective $S=1/2$ $XXZ$ model with antiferromagnetic ${J}_{z}ensuremath{sim}J$ and ferromagnetic ${J}_{ensuremath{perp}}ensuremath{sim}{J}^{2}/D$. Exploiting this connection, we argue that nontrivial ordering into a ``spin-nematic'' occurs whenever $D$ dominates over $J$, and discuss its experimental signatures. We also study a magnetic field induced transition to a magnetization plateau state at magnetization $1/3$ which breaks lattice translation symmetry due to ordering of the ${S}^{z}$ and occupies a lobe in the $B/{J}_{z}mathrm{text{ensuremath{-}}}{J}_{z}/{J}_{ensuremath{perp}}$ phase diagram." @default.
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- W1989884599 date "2006-08-08" @default.
- W1989884599 modified "2023-10-12" @default.
- W1989884599 title "Spin Nematics and Magnetization Plateau Transition in Anisotropic Kagome Magnets" @default.
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- W1989884599 doi "https://doi.org/10.1103/physrevlett.97.067202" @default.
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